期刊文献+

基于DSP及永磁机构真空断路器的同步分合闸控制装置 被引量:17

A Control Device for Synchronized Switch Based on DSP and Vacuum Circuit-breakers with Magnetic Drive
在线阅读 下载PDF
导出
摘要 为了减小在投切电容器组时对电力设备造成的危害,笔者采用DSP、CPLD及高速A/D等技术,实现了交流电压、电流同步采样,能准确计算电压、电流、有功功率、无功功率及功率因数等参数,通过测量控制电源电压、环境温度以及同步开关分合闸的数据预测开关动作时间,实现电容器组的同步投切,减小涌流及过电压的危害并依据电压无功综合控制策略完成无功补偿。试验验证,在相同温度及控制电压下,机构本身分散性小,通过补偿温度及控制电压的影响,断路器满足同步控制要求。 A control device to synchronously sample AC voltage and current and to accurately compute the parameters, including voltage, current, active power, reactive power and power factor, is presented, which is based on the technologies of DSP, CPLD and high-speed A/D converter. By measuring the DC voltage of capacitors, environmental temperature, and historical switch-on and switch-off data of circuit-breakers, the acting time of the circuit-breakers can be predicted with this device, and the synchronous switch of capacitor bank can be realized. Moreover, reactive power can be compensated, and the harm of inrush current and overvoltage can be reduced by using the device with integrated control policy. A number of tests indicate that the dispersion of the device is smaller under similar environment of temperature and voltage, and the circuit-breaker can realize synchronous control through temperature and voltage compensation.
出处 《高压电器》 CAS CSCD 北大核心 2009年第1期116-119,共4页 High Voltage Apparatus
关键词 同步操动 无功补偿 真空断路器 synchronization action reactive power compensation vacuum circuit-breaker
  • 相关文献

参考文献3

二级参考文献15

  • 1孙士民.10kV无功自动补偿装置说明书[Z].济南迪生电子,..
  • 2Delfino B, Fornari F, Gemme C et al. Power quality improvement in transmission and distribution networks via synchronous switching[J]. Transmission and Distribution Conference and Exposition, IEEE/PES, 2001, 19(28): 367-372.
  • 3Lee W Y, Park K Y, Chong J K et al. A method to decide the switching instants of controlled switching circuit breaker for shunt reactors[J]. Transmission and Distribution Conference and Exhibition, 2002, 3(10): 1760-1765.
  • 4KohyamaH, WadaK, HidakaMetal. Development of 550kV and 362kV synchronous switching gas circuit breakers[C]. Transmission and Distribution Conference and Exposition, IEEE/PES, 2002, 1:597-602.
  • 5Cereda C, Gemme C, Reuber C. Synchronous MV circuit breaker with magnetic drive and electronic control[J]. ABB Review, 1999, 6:13-21.
  • 6CIGRE Working Group Task Force 13. 07. Controlled switching of HVAC circuit breakers-Guide for application lines, reactors,capacitors, transformers(PartⅠ)[J]. Electra, 1999, 183(4): 43-57.
  • 7Zou Jiyan, Duan Xiongying, Dong Enyuan. Permanent magnetic actuator and electronic drive for vacuum switches[C]. Proc. 5th Inter. Conf. on Elec. Machines and Systems, Shenyang, China,2001: 1323-1326.
  • 8Asnin L, Backmutsky V. A new numeric technique of accurate frequency and harmonies estimation for power system protection and power quality applications[C]. 10th international conference on Harmonics and power quality, Riode Janeiro, Brazil, 2002, 1: 82-85.
  • 9Tinggren R, Yi Hu, Le Tang et al. Power factor controller -an integrated power quality device[J]. IEEE Transmission and Distribution Conference, 1999, 2: 572-578.
  • 10苏方春,陈晓宁.同步关合技术及其在并联电容器组投切中的应用[J].高压电器,1997,33(5):38-40. 被引量:21

共引文献86

同被引文献150

引证文献17

二级引证文献112

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部